Feedstock Recycling Technologies in the Sustainable Recycling of Plastics from End-ofLife Electrical and Electronic Products

M. Fisher
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引用次数: 7

Abstract

This paper is the third in a series that examines critical factors in the sustainable recycling of plastics from end-of-life (EOL) electrical and electronic equipment (EEE). Previous papers provided an overview of the subject (Sustainable electrical and electronic plastics recycling, ISEE 2004) and the role of energy recovery (Energy recovery in the sustainable recycling of plastics from electrical and electronic products, ISEE 2005). The present paper draws from the earlier papers and explores the role of feedstock (chemical) recycling. In general, plastics recovery consists of two basic process types - material recovery and energy recovery. Two categories of material recovery are of principal interest, mechanical recycling and feedstock recycling. Mechanical recycling reprocesses post-use plastics to plastic recyclates (secondary plastic materials). Feedstock recycling, sometimes referred to as chemical recycling, is the process that converts plastics back to basic petrochemical feedstocks for use by industry in the form of syn crude, process chemicals, or fuels. Feedstock recycling can be broken down into pyrolytic liquefaction; gasification, including the case where the chemical content of the plastics becomes an integral part of an industrial process such as ferrous and non-ferrous metal smelting (reduction processes); hydrogenation processes; and chemical recycling back to reactive monomers or high value oligomers. Feedstock recycling of plastics, although still largely developmental, is being evaluated on a large scale in the United States, Europe, China, and Japan. The plastics industry is actively engaged in R&D. Feedstock recycling technologies can both recover valuable materials and manage substances of concern in an environmentally sound manner. Feedstock recycling technologies have the potential to significantly increase the sustainable recovery of plastics from EOL EEE beyond what can be achieved using mechanical recycling and energy recovery
报废电子电气产品塑料可持续回收中的原料回收技术
本文是研究报废(EOL)电气和电子设备(EEE)塑料可持续回收关键因素的系列文章中的第三篇。以前的论文提供了主题的概述(可持续电气和电子塑料回收,ISEE 2004)和能源回收的作用(能源回收在可持续回收的塑料从电气和电子产品,ISEE 2005)。本论文借鉴了早期的论文,探讨了原料(化学)回收的作用。一般来说,塑料回收包括两种基本的工艺类型——材料回收和能量回收。主要有两类材料回收,即机械回收和原料回收。机械回收将废旧塑料再加工成塑料回收物(二次塑料材料)。原料回收,有时被称为化学回收,是将塑料转化为基本的石化原料,以合成原油、加工化学品或燃料的形式供工业使用的过程。原料回收可分解为热解液化;气化,包括塑料的化学成分成为诸如黑色金属和有色金属冶炼(还原过程)等工业过程的组成部分的情况;加氢过程;和化学回收回到反应性单体或高价值的低聚物。塑料的原料回收虽然在很大程度上仍处于发展阶段,但在美国、欧洲、中国和日本正在进行大规模的评价。塑料行业积极从事研发。原料再循环技术既能回收有价值的材料,又能以无害环境的方式管理有关物质。原料回收技术有可能大大提高EOL EEE塑料的可持续回收,而不是使用机械回收和能源回收
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